Quality Hybrid Ultrasonic Flowmeter 4-20mA Doppler Liquid Measurement factory
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Quality Hybrid Ultrasonic Flowmeter 4-20mA Doppler Liquid Measurement factory
Quality Hybrid Ultrasonic Flowmeter 4-20mA Doppler Liquid Measurement factory
Quality Hybrid Ultrasonic Flowmeter 4-20mA Doppler Liquid Measurement factory
Quality Hybrid Ultrasonic Flowmeter 4-20mA Doppler Liquid Measurement factory
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Hybrid Ultrasonic Flowmeter 4-20mA Doppler Liquid Measurement

Brand Name: QINWEIYB
Model Number: QWLW-GY206
Place of Origin: China
Minimum Order Quantity: 1Set
Price: Negotiable
Supply Ability: 100PCS/Month

Product Details


Product Name: Hybrid Ultrasonic Flow Meter Transducer Cable: Standard Cable Length:16ft(5m).
Output: 4-20mA,LCD Display Communication: RS232, Modbus Protocol
Weight: Transmitter:approximately1.0kg. Transmitter Enclosure: IP65,ABS/PC Enclosure
Material: Aluminum Alloy Or Stainless Steel Housing Fluid Compatibility: Clean Liquids, Wastewater, Chemicals
Humidity: Up To 99% RH,non-condensing Transmitter: NEMA13,IP54
Highlight

Hybrid Ultrasonic Flow Meter

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Ultrasonic Flow Meter 4-20mA

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Doppler Ultrasonic Liquid Flow Meter

Product Description

The Hybrid Ultrasonic Flowmeter Combines Dual Technologies To Accurately Measure Fluid Flow

The hybrid ultrasonic flowmeter is a compound flow measurement instrument that combines the Doppler method and the time difference of propagation method (time difference method). It can automatically switch the measurement mode according to the fluid state to adapt to a wider range of industrial application scenarios.

Why do we need a hybrid solution? What problems does it solve?

It perfectly addresses the limitations of single-principle flowmeters in complex operating conditions:

Dealing with changes in fluid properties:
  • Scenario: In a water treatment process, the raw water is very dirty (suitable for Doppler), but becomes clear after treatment (suitable for time difference method). Using a single-principle flowmeter, either it cannot measure in the initial stage or it cannot measure in the later stage.
  • Hybrid solution: Fully automatic adaptation throughout the process, seamless switching, ensuring measurement from start to finish.
Overcoming the "bubble interference" problem:
  • Scenario: In a clean pipeline pumping system, bubbles may occasionally be mixed in. This is a fatal interference for the time difference method, causing the measured value to fluctuate wildly or fail.
  • Hybrid solution: When bubbles appear and cause the time difference method signal to deteriorate, the system immediately switches to the Doppler method (bubbles themselves are excellent scatterers) for measurement, maintaining the stability of the output.
Enhancing reliability and credibility:
  • The two methods serve as backups for each other. If one system fails, the other can still work, significantly enhancing system reliability.
  • The data cross-comparison function can effectively identify anomalies and prevent the provision of incorrect data due to a single sensor failure.
Applicable scenarios
  • Extremely wide medium adaptability: It can handle everything from clean tap water to turbid sewage, from bubble-free to gas-containing liquids.
  • High reliability: It has redundant measurement capabilities, reducing the risk of downtime.
  • Intelligent diagnosis: It not only measures flow but also provides additional information on the fluid state.
  • Simplified selection: When facing possible changes in working conditions, there is no need to worry about choosing between time difference method and Doppler method; a hybrid instrument can handle all situations.
  • Multiple pipe materials: It supports plastic (PVC, FRP), metal (steel pipe, stainless steel pipe), and lined pipes (asphalt, mortar).
Typical Applications
  1. Water and Wastewater Treatment Plants: Inlet (Doppler mode as the main option) -> Process (Possible variations) -> Outlet (Time Difference mode as the main option). One instrument can cover the entire process.
  2. Circulating Cooling Water Systems: Initially, the system is clean, suitable for Time Difference method; after operation, pipe corrosion and scaling occur, generating impurities, and Doppler method is introduced.
  3. Partially Full Pipe Flow Measurement: Some advanced open channel/partially full pipe flow meters adopt a hybrid principle, using Time Difference method to measure liquid level and Doppler method to measure flow velocity.
  4. Energy Management and Verification: When dealing with complex components and unclear working conditions of circulating media, hybrid instruments can ensure successful measurement in one attempt, avoiding failures caused by incorrect selection.

Hybrid ultrasonic flowmeters represent the trend of ultrasonic flow measurement technology towards intelligence, high reliability and multi-functionality. Through the integration of principles, they ingeniously resolve the core contradiction of "medium uncertainty" commonly encountered in industrial measurements.

Product Highlights

The Hybrid Ultrasonic Flowmeter Combines Dual Technologies To Accurately Measure Fluid Flow The hybrid ultrasonic flowmeter is a compound flow measurement instrument that combines the Doppler method and the time difference of propagation method (time difference method). It can automatically switch ...

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